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Application of the Hotelling and ideal observers to detection and localization of exoplanets

机译:Hotelling和理想观测者在系外行星探测和定位中的应用

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摘要

The ideal linear discriminant or Hotelling observer is widely used for detection tasks and image-quality assessment in medical imaging, but it has had little application in other imaging fields. We apply it to detection of planets outside of our solar system with long-exposure images obtained from ground-based or space-based telescopes. The statistical limitations in this problem include Poisson noise arising mainly from the host star, electronic noise in the image detector, randomness or uncertainty in the point-spread function (PSF) of the telescope, and possibly a random background. PSF randomness is reduced but not eliminated by the use of adaptive optics. We concentrate here on the effects of Poisson and electronic noise, but we also show how to extend the calculation to include a random PSF. For the case where the PSF is known exactly, we compare the Hotelling observer to other observers commonly used for planet detection; comparison is based on receiver operating characteristic (ROC) and localization ROC (LROC) curves.
机译:理想的线性判别式或Hotelling观测器已广泛用于医学成像中的检测任务和图像质量评估,但在其他成像领域却很少使用。我们将其用于从地面或太空望远镜获得的长时间曝光图像来探测太阳系以外的行星。此问题的统计限制包括主要由宿主恒星引起的泊松噪声,图像检测器中的电子噪声,望远镜的点扩展函数(PSF)的随机性或不确定性,以及可能是随机背景。通过使用自适应光学器件,可以减少但不能消除PSF随机性。我们在这里集中讨论泊松效应和电子噪声的影响,但是我们还将展示如何扩展计算以包括随机PSF。对于确切知道PSF的情况,我们将Hotelling观测器与通常用于行星探测的其他观测器进行比较;比较是基于接收机的工作特性(ROC)和本地化的ROC(LROC)曲线。

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